共生菌和噬菌体捕食在抑制致病性副溶血性弧菌定植中的协同作用。

IF 9.2 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Ling Chen, Zhipeng Huang, Mathias Middelboe, Deng Deng, Yingfei Ma
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引用次数: 0

摘要

定植抗性是微生物群抑制病原体入侵的基本机制;然而,其功效的生态和机制决定因素仍未完全了解。在这里,我们构建了一个明确的微生物联合体,并采用虾体内感染模型来研究共生微生物与病原体特异性噬菌体在抑制副溶血性弧菌中的协同作用。我们的体外实验表明,结合关键分类群,特别是噬菌体整合,显着提高了病原体的排除。此外,我们证明了在病原体暴露之前建立联盟导致病原体增殖的不可逆抑制,强调了时机的关键重要性。机理分析表明,来自共生体的营养竞争触发了病原体的噬菌体激活,从而抑制了病原体的增殖。利用这些见解,我们理性地设计了一个极简但有效的联合体,当与噬菌体捕食相结合时,它始终赋予虾强大的定植抗性。本研究描述了微生物群介导的定植抗性背后的核心生态原理,并建立了一个易于处理的噬菌体共生框架,用于病原体控制,在水生和潜在哺乳动物系统中抗生素耐药性上升的背景下具有翻译相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergistic effects of commensals and phage predation in suppressing colonization by pathogenic Vibrio parahaemolyticus.

Colonization resistance is a fundamental mechanism by which microbiomes suppress pathogen invasion; however, the ecological and mechanistic determinants of its efficacy remain incompletely understood. Here, we constructed a defined microbial consortium and employed in vivo shrimp infection models to investigate the synergistic interaction between commensal microbes and a pathogen-specific phage in suppressing the pathogen Vibrio parahaemolyticus. Our in vitro experiment revealed that combining key taxa, particularly with phage integration, markedly enhanced pathogen exclusion. Furthermore, we demonstrated that establishing the consortium prior to pathogen exposure resulted in the irreversible suppression of pathogen proliferation, highlighting the critical importance of timing. Mechanistic analyses revealed that nutrient competition from commensals triggered prophage activation in the pathogen, thereby inhibiting its proliferation. Leveraging these insights, we rationally designed a minimalist, yet effective consortium that, when coupled with phage predation, consistently conferred robust colonization resistance in shrimp. This study delineates the core ecological principle underlying microbiota-mediated colonization resistance and establishes a tractable phage-commensal framework for pathogen control, with translational relevance in the context of rising antibiotic resistance in aquatic and potentially mammalian systems.

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来源期刊
npj Biofilms and Microbiomes
npj Biofilms and Microbiomes Immunology and Microbiology-Microbiology
CiteScore
12.10
自引率
3.30%
发文量
91
审稿时长
9 weeks
期刊介绍: npj Biofilms and Microbiomes is a comprehensive platform that promotes research on biofilms and microbiomes across various scientific disciplines. The journal facilitates cross-disciplinary discussions to enhance our understanding of the biology, ecology, and communal functions of biofilms, populations, and communities. It also focuses on applications in the medical, environmental, and engineering domains. The scope of the journal encompasses all aspects of the field, ranging from cell-cell communication and single cell interactions to the microbiomes of humans, animals, plants, and natural and built environments. The journal also welcomes research on the virome, phageome, mycome, and fungome. It publishes both applied science and theoretical work. As an open access and interdisciplinary journal, its primary goal is to publish significant scientific advancements in microbial biofilms and microbiomes. The journal enables discussions that span multiple disciplines and contributes to our understanding of the social behavior of microbial biofilm populations and communities, and their impact on life, human health, and the environment.
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